25V, 100μF Conductive Polymer Hybrid Aluminum Electrolytic Capacitors(Surface Mount Type) - AVMC
250AVMC101M0608, AP-CON Hybrid
Our 25V 100μF ESR30 Conductive Polymer Hybrid Aluminum Electrolytic Capacitors combine the benefits of low ESR, high reliability, high withstand voltage making them ideal for applications that require efficient power delivery in confined spaces.
Part No. | 250AVMC101M0608 | Capacitance Tolerance | ±20% |
Type | Hybrid | ESR(mΩmax) | 30 |
Application | Long life | RC-1(mA) | 1,400@125C |
AEC-Q200 | N | RC-2(mA) | - |
Temp(℃) | -55 to 125℃ | LC(μA) | 25 |
Endurance(h) | 4000 | DF(δ) | 0.14 |
Vdc(V) | 25 | L(D)/W/H(mm) | 6.3*7.7 |
Cap.(µF) | 100 |
This Conductive Polymer Hybrid Aluminum Electrolytic Capacitors(SMD) has a long lifespan, high reliability, high temperature and high voltage, ensuring high-performance operation while reducing energy consumption. It is ideal for DC-DC converters, voltage regulators, and decoupling applications. It finds wide application in the high-end power supply field, power supply, MB/DT, NB, 5G network-related, AI&Data center and meets various computing application requirements.
Features
- Low ESR, long lifespan, high voltage suitable for DC-DC converters, voltage regulators and decoupling application.
- Rate voltage: 25 Vdc.
- Endurance : 4000hrs at 125℃
- RoHS Compliant, Halogen free
Specification
- Category Temperature Range: -55 to +125 ℃.
- Rate voltage: 25 Vdc.
- Capacitance: 100μF
- Impendence: 30 mΩ
- Ripple Current: 1,400@125C (mArms)
- Endurance: 125℃, rated voltage applied, 4000 hrs.
- Damp Heat, Steady State: 60℃, 90 to 95%RH, 1000 hrs.
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APAQ
APAQ TECHNOLOGY CO., LTD. is Taiwan supplier and manufacturer in Manufacturing of electronic products and related fields APAQ has been offering our customers high quality Conductive Polymer Aluminum Electrolytic Capacitors, Conductive Polymer Hybrid Aluminum Electrolytic Capacitor, Aluminum Electrolytic Capacitor since 2005. With both advanced technology and 18 years experience, APAQ always make sure to meet each customer's demand.